Insulin signaling in LepR cells modulates fat and glucose homeostasis independent of leptin

Author:

Borges Beatriz C.12,Han Xingfa13,Allen Susan J.1,Garcia-Galiano David1,Elias Carol F.14

Affiliation:

1. Department of Molecular and Integrative Physiology, University of Michigan, Ann Arbor, Michigan

2. Department of Physiology, School of Medicine of Ribeirao Preto, University of Sao Paulo, Brazil

3. Isotope Research Laboratory, Sichuan Agricultural University, Ya'an, People's Republic of China

4. Department of Obstetrics and Gynecology, University of Michigan, Ann Arbor, Michigan

Abstract

Hypothalamic neurons detect changes in circulating hormones such as leptin and insulin and put forward outputs to sustain energy and glucose homeostasis. Because leptin and insulin receptors colocalize in ~40–60% of neurons in the hypothalamus, we characterized the metabolic phenotype of mice with selective deletion of the insulin receptor (InsR) in LepR cells. LRΔInsR mice presented no difference in body weight and insulin levels but increased fat mass. In the light phase, LRΔInsR mice exhibited increased food intake, locomotor activity, carbon dioxide production, and respiratory exchange rate. These mice showed reduced fat oxidation and reduced expression of cluster of differentiation 36 and AMP-activated protein kinase-α1 in the liver, increased glucose oxidation in the light phase, and overall reduced basal glucose levels. To verify the impact of InsR deletion in LepR cells in obesity, we generated ob/ ob InsRfl, ob/ ob LRcre, and ob/ ob LRΔInsR mice. The ob/ ob LRΔInsR mice had higher body weight, fat mass, and expression of genes related to fat metabolism in the liver. No difference in food intake despite increased neuropeptide Y and agouti-related peptide expression, and no difference in energy expenditure, fat, or glucose oxidation was found in ob/ ob LRΔInsR compared with LRcre or LRΔInsR controls. Remarkably, basal glucose levels were reduced, and the expression of genes associated with glucose metabolism in the liver was higher. Insulin signaling in LepR cells is required for the proper fat and glucose oxidation. These effects are independent of leptin given that the leptin-deficient ob/ ob LRΔInsR mice also presented reduced glycemia and higher adiposity. The mechanisms underlying these responses remain to be unveiled.

Funder

National Institutes of Health

Sao Paulo Research Foundation (FAPESP

Sao Paulo Research Foundation

Brazilian National Council for Technological Development

Publisher

American Physiological Society

Subject

Physiology (medical),Physiology,Endocrinology, Diabetes and Metabolism

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